V. Danesh Et Al. , "The Evolution of IsolatedKH1-29 properties for producing alpha-amylase from a Novel native highly thermostable, thermophilic and alkaline Bacillus sp," Biolife , vol.3(2), pp.571-575, 2015
Danesh, V. Et Al. 2015. The Evolution of IsolatedKH1-29 properties for producing alpha-amylase from a Novel native highly thermostable, thermophilic and alkaline Bacillus sp. Biolife , vol.3(2) , 571-575.
Danesh, V., ÖZCAN, N., & Najafi, M., (2015). The Evolution of IsolatedKH1-29 properties for producing alpha-amylase from a Novel native highly thermostable, thermophilic and alkaline Bacillus sp. Biolife , vol.3(2), 571-575.
Danesh, Vahed, NUMAN ÖZCAN, And Mojtaba Najafi. "The Evolution of IsolatedKH1-29 properties for producing alpha-amylase from a Novel native highly thermostable, thermophilic and alkaline Bacillus sp," Biolife , vol.3(2), 571-575, 2015
Danesh, Vahed Et Al. "The Evolution of IsolatedKH1-29 properties for producing alpha-amylase from a Novel native highly thermostable, thermophilic and alkaline Bacillus sp." Biolife , vol.3(2), pp.571-575, 2015
Danesh, V. ÖZCAN, N. And Najafi, M. (2015) . "The Evolution of IsolatedKH1-29 properties for producing alpha-amylase from a Novel native highly thermostable, thermophilic and alkaline Bacillus sp." Biolife , vol.3(2), pp.571-575.
@article{article, author={Vahed Danesh Et Al. }, title={The Evolution of IsolatedKH1-29 properties for producing alpha-amylase from a Novel native highly thermostable, thermophilic and alkaline Bacillus sp}, journal={Biolife}, year=2015, pages={571-575} }